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首页> 外文期刊>Plant and cell physiology >Genotype Influences Sulfur Metabolism in Broccoli (Brassica oleracea L.) Under Elevated CO2 and NaCl Stress
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Genotype Influences Sulfur Metabolism in Broccoli (Brassica oleracea L.) Under Elevated CO2 and NaCl Stress

机译:CO2和NaCl胁迫下基因型对西兰花(Brassica oleracea L.)中硫代谢的影响

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摘要

Climatic change predicts elevated salinity in soils as well as increased carbon dioxide dioxide [CO2] in the atmosphere. The present study aims to determine the effect of combined salinity and elevated [CO2] on sulfur (S) metabolism and S-derived phytochemicals in green and purple broccoli (cv. Naxos and cv. Viola, respectively). Elevated [CO2] involved the amelioration of salt stress, especially in cv. Viola, where a lower biomass reduction by salinity was accompanied by higher sodium (Na+) and chloride (Cl-) compartmentation in the vacuole. Moreover, salinity and elevated [CO2] affected the mineral and glucosinolate contents and the activity of biosynthetic enzymes of S-derived compounds and the degradative enzyme of glucosinolate metabolism, myrosinase, as well as the related amino acids and the antioxidant glutathione (GSH). In cv. Naxos, elevated [CO2] may trigger the antioxidant response to saline stress by means of increased GSH concentration. Also, in cv. Naxos, indolic glucosinolates were more influenced by the NaCl x CO2 interaction whereas in cv. Viola the aliphatic glucosinolates were significantly increased by these conditions. Salinity and elevated [CO2] enhanced the S cellular partitioning and metabolism affecting the myrosinase-glucosinolate system.
机译:气候变化预测土壤盐分会升高,大气中的二氧化碳[CO2]也会增加。本研究旨在确定盐度和升高的[CO2]对绿色和紫色西兰花(分别为纳克索斯州和维奥拉州)中硫(S)代谢和S衍生的植物化学物质的影响。升高的[CO2]可以减轻盐分的压力,尤其是在简历中。中提琴,盐度降低的生物量减少,同时液泡中的钠(Na +)和氯化物(Cl-)分隔较高。此外,盐度和升高的[CO2]影响矿物质和芥子油苷的含量以及S衍生化合物的生物合成酶的活性以及芥子油苷代谢的降解酶,黑芥子酶以及相关的氨基酸和抗氧化剂谷胱甘肽(GSH)。在简历中升高[CO2]的Naxos可能会通过增加GSH浓度触发对盐胁迫的抗氧化反应。另外,在简历中。纳克索斯,吲哚芥子油苷更受NaCl x CO2相互作用的影响,而在cv中。在这些条件下,脂肪族芥子油苷中提琴的含量显着增加。盐度和升高的[CO2]增强了S细胞的分配和代谢,影响了黑芥子酶-芥子油苷系统。

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